Benoni G, Terzi M, Adami A, Grigolini L, Del Soldato P, Cuzzolin L
Institute of Pharmacology, University of Verona, Policlinico Borgo Roma, Italy.
J Pharm Sci. 1995 Jan;84(1):93-5. doi: 10.1002/jps.2600840121.
An accurate and sensitive HPLC method has been developed for the determination of nitrofenac, a new, original diclofenac derivate showing a good tolerability and a wide anti-inflammatory profile, diclofenac, and its metabolites in plasma. This method has been applied to evaluate the pharmacokinetic parameters of the drugs, using a noncompartmental model, after the oral administration of 5 mg/kg nitrofenac to rats. Nitrofenac and the internal standard flufenamic acid were dissolved in acetonitrile, and diclofenac was dissolved in methanol. The drugs were eluted from a 5 microns LC-8 column with a mobile phase consisting of acetonitrile/water (50/50 v/v) adjusted to pH 3.3 with glacial acetic acid, at a flow rate of 2 mL/min with UV detection at 280 nm for diclofenac and 275 nm for nitrofenac. The detection limit for the drugs in plasma was 25 ng/mL. The peak concentration of nitrofenac was reached 7 h after drug administration, while with diclofenac we observed three peaks at 2, 5, and 10 h; the mean residence time and the elimination rate constant for nitrofenac were 6.18 +/- 0.09 h and 0.37 +/- 0.03 h-1 respectively, while those for diclofenac were 12.24 +/- 0.11 h and 0.11 +/- 0.04 h-1. Under our conditions, the metabolism of nitrofenac produced 23% diclofenac and other metabolites: the plasma concentrations and kinetic characteristics of diclofenac are enough to induce an anti-inflammatory activity, while the clinical importance of the other metabolites remains to be elucidated.
已开发出一种准确、灵敏的高效液相色谱法,用于测定血浆中的硝氯芬酸(一种新型的、具有良好耐受性和广泛抗炎谱的双氯芬酸衍生物)、双氯芬酸及其代谢物。在给大鼠口服5 mg/kg硝氯芬酸后,该方法已应用于使用非房室模型评估药物的药代动力学参数。硝氯芬酸和内标氟芬那酸溶解于乙腈中,双氯芬酸溶解于甲醇中。药物从5微米的LC - 8柱上洗脱,流动相由乙腈/水(50/50 v/v)组成,用冰醋酸调节至pH 3.3,流速为2 mL/min,双氯芬酸在280 nm处、硝氯芬酸在275 nm处进行紫外检测。血浆中药物的检测限为25 ng/mL。给药后7小时达到硝氯芬酸的峰值浓度,而双氯芬酸在2、5和10小时出现三个峰值;硝氯芬酸的平均驻留时间和消除速率常数分别为6.18±0.09小时和0.37±0.03 h⁻¹,而双氯芬酸的分别为12.24±0.11小时和0.11±0.04 h⁻¹。在我们的条件下,硝氯芬酸的代谢产生了23%的双氯芬酸和其他代谢物:双氯芬酸的血浆浓度和动力学特征足以诱导抗炎活性,而其他代谢物的临床重要性仍有待阐明。